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通过聚合物分子量调节pH/热敏聚合物微球的胰岛素释放曲线。

Modulating insulin-release profile from pH/thermosensitive polymeric beads through polymer molecular weight.

作者信息

Ramkissoon-Ganorkar C, Liu F, Baudys M, Kim S W

机构信息

Department of Pharmaceutics and Pharmaceutical Chemistry, Center for Controlled Chemical Delivery, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

J Control Release. 1999 Jun 2;59(3):287-98. doi: 10.1016/s0168-3659(99)00006-1.

Abstract

Stimuli-sensitive statistical terpolymers of N-isopropylacrylamide (NIPAAm) (temperature-sensitive), butyl methacrylate (BMA) and acrylic acid (AA) (pH-sensitive) of various molecular weight (MW) with NIPAAm/BMA/AA feed mol ratio of 85/5/10 were used to modulate release of insulin, a model protein drug, from pH/thermosensitive polymeric beads. Protein drug loading from an aqueous medium into the beads was achieved by preparing a 7 or 10% (w/v) polymer solution with 0.2% (w/v) insulin at low pH and below the lower critical solution temperature (LCST) of the polymer (pH 2.0 and 4 degrees C), and then dropping the solution into an oil bath above the LCST of the solution (35 degrees C). This loading procedure maintained protein stability while achieving high loading efficiency, between 90 and 95% in the beads. Insulin-release studies from beads prepared from terpolymers of the same composition but increasing MW were performed at pH 2.0 and 7.4, at 37 degrees C. It was observed that there was negligible loss of insulin at pH 2.0 from the beads, indicating no burst effect. At pH 7.4, insulin release was seen from all the beads and the release rate was a function of the MW of the polymer. The low MW polymeric beads eroded, dissolved and released most of the insulin within 2 h at pH 7.4 and 37 degrees C, the intermediate MW polymeric beads swelled slightly, dissolved and released most of the insulin within 4 h, whereas the high MW polymeric beads swelled slowly and gradually released the loaded insulin over a period of 8 h. Thus, the release of protein from the low MW polymeric beads is controlled by the rate of dissolution of the polymer, whereas the release from the high MW polymeric beads is controlled by swelling of the beads and drug diffusion. Studies using fluorescein-labeled insulin revealed that insulin was uniformly distributed in the beads regardless of polymer MW. The loaded and released insulin were fully bioactive. Based on the described results, the low MW polymeric beads may be used for immediate delivery of protein drugs in the duodenum, the intermediate MW polymeric beads may be used for lower small intestine targeting, while the high MW polymeric beads may be used to target protein drugs predominantly to the colon.

摘要

使用不同分子量(MW)的N-异丙基丙烯酰胺(NIPAAm)(温度敏感型)、甲基丙烯酸丁酯(BMA)和丙烯酸(AA)(pH敏感型)的刺激敏感型统计三元共聚物,NIPAAm/BMA/AA进料摩尔比为85/5/10,用于调节模型蛋白药物胰岛素从pH/温度敏感型聚合物微球中的释放。通过在低pH值且低于聚合物的低临界溶液温度(LCST)(pH 2.0和4℃)下制备含0.2%(w/v)胰岛素的7%或10%(w/v)聚合物溶液,然后将溶液滴入高于溶液LCST(35℃)的油浴中,实现了蛋白药物从水介质加载到微球中。这种加载过程在实现高加载效率(微球中为90%至95%)的同时保持了蛋白稳定性。对由相同组成但MW增加的三元共聚物制备的微球进行胰岛素释放研究,在37℃下于pH 2.0和7.4条件下进行。观察到在pH 2.0时微球中胰岛素的损失可忽略不计,表明无突释效应。在pH 7.4时,所有微球均有胰岛素释放,且释放速率是聚合物MW的函数。低MW聚合物微球在pH 7.4和37℃下2小时内侵蚀、溶解并释放了大部分胰岛素,中等MW聚合物微球轻微溶胀、溶解并在4小时内释放了大部分胰岛素,而高MW聚合物微球溶胀缓慢并在8小时内逐渐释放加载的胰岛素。因此,低MW聚合物微球中蛋白的释放受聚合物溶解速率控制,而高MW聚合物微球中蛋白的释放受微球溶胀和药物扩散控制。使用荧光素标记胰岛素的研究表明,无论聚合物MW如何,胰岛素在微球中均均匀分布。加载和释放的胰岛素均具有完全生物活性。基于上述结果,低MW聚合物微球可用于在十二指肠中立即递送蛋白药物,中等MW聚合物微球可用于靶向小肠下部,而高MW聚合物微球可主要用于将蛋白药物靶向结肠。

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